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A Multimodal Measurement Approach for Analyzing and Characterizing Shaking Dynamics in Shaken Baby Syndrome Using Optical Motion Tracking, Accelerometers, and Force-Sensing Films with Offender-Profile-Aligned Participant Sampling

Grau, Raphael Michelangelo 1; Stöckl, Florian; Schneider, Julian 1; Feld, Katharina 2; Bause, K. 1; Düser, T. 1
1 Institut für Produktentwicklung (IPEK), Karlsruher Institut für Technologie (KIT)
2 Universität Heidelberg (Universität Heidelberg)

Abstract (englisch):

Shaken Baby Syndrome is the leading non-natural cause of death in infancy, yet its biomechanical mechanisms remain insufficiently understood. The scarcity of clearly identifiable cases and limited reliable validation data hinder a differentiation between abusive and non-abusive injury patterns. Existing shaking studies have primarily examined the motion response of non-biofidelic infant surrogates, leaving the underlying initial excitation unexplored and failing to reflect offender-related demographic profiles or the applied contact forces that may contribute to associated injuries. This work addresses this gap by experimentally characterizing the initial excitation and realistic load cases of shaking events.
This study employed complementary, time-synchronized sensor systems to obtain robust and coherent multimodal measurements. After ethics and data protection approval, fifteen participants (aged 21–35) completed pre-study questionnaires to record anthropometrics and screen for exclusion criteria (e.g. musculoskeletal injuries, psychological disorders). The setup combined two marker-based motion-tracking systems (Aruco/Vicon), an accelerometer, and a force-sensing film placed on the palmar surfaces. ... mehr


Zugehörige Institution(en) am KIT Institut für Produktentwicklung (IPEK)
Publikationstyp Poster
Publikationsdatum 11.07.2026
Sprache Englisch
Identifikator KITopen-ID: 1000196262
Veranstaltung 10th World Congress of Biomechanics (WCB 2026), Vancouver, Kanada, 11.07.2026 – 15.07.2026
Schlagwörter Abusive Head Trauma, Shaken Baby Syndrome, Motion Tracking, Trajectory
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